Teaching Geography to High School Students with Academic Deficits: Effects of a Computerized Map Tutorial

1988 ◽  
Vol 11 (4) ◽  
pp. 371-379 ◽  
Author(s):  
Steven V. Horton ◽  
Thomas C. Lovitt ◽  
Tim Slocum

This research investigated the effectiveness of two treatments designed to teach the locations of 28 major cities in Asia to students identified as learning disabled and remedial enrolled in a ninth-grade world geography class. In one treatment, students were presented the locations of 14 cities by completing a computerized map tutorial. In the other intervention, students were asked to learn the locations of 14 different cities by referencing an atlas and transcribing their findings to a work map. Results indicated that the computerized map tutorial produced significantly higher performance than the atlas condition for students with learning disabilities and remedial pupils. Within treatments, no significant difference was noted in the performance of the two groups. Several practical applications of computerized graphics for students with academic deficits are discussed.

2021 ◽  
pp. 089590482110199
Author(s):  
Jennifer A. Freeman ◽  
Michael A. Gottfried ◽  
Jay Stratte Plasman

Recent educational policies in the United States have fostered the growth of science, technology, engineering, and mathematics (STEM) career-focused courses to support high school students’ persistence into these fields in college and beyond. As one key example, federal legislation has embedded new types of “applied STEM” (AS) courses into the career and technical education curriculum (CTE), which can help students persist in STEM through high school and college. Yet, little is known about the link between AS-CTE coursetaking and college STEM persistence for students with learning disabilities (LDs). Using a nationally representative data set, we found no evidence that earning more units of AS-CTE in high school influenced college enrollment patterns or major selection in non-AS STEM fields for students with LDs. That said, students with LDs who earned more units of AS-CTE in high school were more likely to seriously consider and ultimately declare AS-related STEM majors in college.


2021 ◽  
pp. 004005992110255
Author(s):  
Whitney Sommers Butler ◽  
Casey Hord ◽  
Susan Watts-Taffe

In spite of the prevailing assumption that formal reading instruction is no longer needed once adolescents reach high school, students at the secondary level still benefit from explicit reading instruction to continue developing advanced literacy skills enabling them to access complex narrative texts. This article argues for the importance of teachers to scrutinize the texts they plan to teach to determine what instruction and supports are needed to promote reading comprehension for students with learning disabilities. Specifically, this article examines how nonlinear text structures can challenge adolescent reading comprehension and illustrates explicit text structure instruction with three exemplar texts which use unconventional narrative patterns. The article emphasizes the importance of considering the qualitative features of texts to inform instruction to support reading comprehension for students with learning disabilities.


2016 ◽  
Vol 32 (5) ◽  
pp. 664-696 ◽  
Author(s):  
Jay Stratte Plasman ◽  
Michael A. Gottfried

Applied science, technology, engineering, and math (STEM) coursetaking is becoming more commonplace in traditional high school settings to help students reinforce their learning in academic STEM courses. Throughout U.S. educational history, vocational education has been a consistent focus for schools to keep students on the school-to-career pathway. However, very few studies have examined the role of applied STEM coursetaking in improving schooling outcomes for students with learning disabilities. This is a major missing link as students with learning disabilities tend to exhibit much higher dropout rates than students from the general population. This study examines mechanisms displayed through applied STEM courses and the role they play in helping students with learning disabilities complete high school and transition into college. Using a nationally representative data set of high school students and their full transcripts (i.e., Education Longitudinal Study of 2002), we found that students with learning disabilities who took applied STEM courses significantly increased their educational outcomes in the following ways: lowered chances of dropout, increased math test scores, and increased enrollment in postsecondary education. While the general student population also benefited by taking applied STEM courses, the advantages were greater for those students with learning disabilities.


1999 ◽  
Vol 20 (2) ◽  
pp. 84-105 ◽  
Author(s):  
William D. Bursuck ◽  
Dennis D. Munk ◽  
Mary M. Olson

As more and more students with learning disabilities are being included in general education classes, concerns have arisen in regard to the low grades that these students are likely to receive. Although there is some evidence to suggest that teacher adaptations of grades are helpful, the extent to which teachers implement grading adaptations may be influenced at least in part by the teachers' perceived acceptability of the adaptations. One factor that may influence perceived teacher acceptability is student perceptions. Teachers may be unlikely to use adaptations that are perceived as negative by their students. The purpose of this study was to (a) assess high school students' perceptions of the fairness of grading adaptations, (b) identify factors (e.g., achievement level) that may influence perceptions of fairness, and (c) identify practices deemed most fair and acceptable to students with and without learning disabilities. This purpose was met by surveying and interviewing high school students with and without learning disabilities. The results of the surveys and interviews as well as their implications for grading students with learning disabilities in general education classes are discussed.


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